( Applicable to the students admitted from the Academic year 2006 – 2007 onwards)

THEORY

L

T

P

M

1.

EE 1401

Power System Operation and Control

3

1

0

100

2.

EE 1402

High Voltage Engineering

3

0

0

100

3.

EE 1403

Design of Electrical Apparatus

3

1

0

100

4.

EE 1001

Special Electrical Machines

3

0

0

100

5.

Elective – I

3

0

0

100

6.

Elective – II

3

0

0

100

PRACTICAL

1.

EE 1404

Power System Simulation Laboratory

0

0

3

100

2.

EE 1453

Comprehension

0

0

2

--

EE 1401 POWER SYSTEM OPERATION AND CONTROL 3 1 0 100

AIM
To become familiar with the preparatory work necessary for meeting the next day’s operation and the various control actions to be implemented on the system to meet the minute-to-minute variation of system load.

OBJECTIVES
i. To get an overview of system operation and control.
ii. To understand & model power-frequency dynamics and to design power-frequency controller.
iii. To understand & model reactive power-voltage interaction and different methods of control for maintaining voltage profile against varying system load.

AIM
To expose the students to various types of over voltage transients in power system and its effect on power system.
- Generation of over voltages in laboratory
- Testing of power apparatus and system.

OBJECTIVES
i. To understand the various types of over voltages in power system and protection methods.Generation of over voltages in laboratories.
ii. Measurement of over voltages.
iii. Nature of Breakdown mechanism in solid, liquid and gaseous dielectrics – discussion on commercial insulants.
iv. Testing of power apparatus and insulation coordination

1. OVER VOLTAGES IN ELECTRICAL POWER SYSTEMS 6
Causes of over voltages and its effect on power system – Lightning, switching surges and
temporary over voltages - protection against over voltages.

AIM
To expose the students to the concept of design of various types of electrical machines.

OBJECTIVES
To provide sound knowledge about constructional details and design of various electrical machines.

i. To study mmf calculation and thermal rating of various types of electrical
machines.
ii. To design armature and field systems for D.C. machines.
iii. To design core, yoke, windings and cooling systems of transformers.
iv. To design stator and rotor of induction machines.
v. To design stator and rotor of synchronous machines and study their thermal
behaviour.

Anna university Engineering Syllabus

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